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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Effects of size,capping agent,and concentration of CdSe and CdTe quantum dots doped into a nematic liquid crystal on the optical and electro-optic properties of the final colloidal liquid crystal mixture
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Effects of size,capping agent,and concentration of CdSe and CdTe quantum dots doped into a nematic liquid crystal on the optical and electro-optic properties of the final colloidal liquid crystal mixture

机译:向列液晶中掺杂CdSe和CdTe量子点的大小,封端剂和浓度对最终胶体液晶混合物的光学和电光性质的影响

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摘要

To investigate size and capping agent-dependent alignment and electro-optic effects of quantum dots (QDs) in nematic LCs,mixtures of a nematic phenylpyrimidine LC (LC1) doped with hexadecylamine-capped CdSe and thioglycolic acid-capped CdTe QDs were prepared and investigated by polarized optical microscopy between plain,untreated glass slides and in ITO-coated glass cells with rubbed polyimide alignment layers as well as by electro-optic analysis. The five investigated CdSe QDs,varying in size from 2.5 to 5.2 nm,show fluorescence emission maxima ranging from 480 to 610 nm,and the four CdTe QDs,varying in size from 3.2 to 4.0 nm,emit light from 530 to 610 nm depending on their size. The CdSe QDs favoring homeotropic anchoring of the nematic LC induce vertical alignment at 1 and 2 wt% in LC1 between plain glass slides and only at 1 wt% in the planar cells,except for CdSe QD emitting at 590 nm (CdSe_(590)),which induces vertical alignment independent of the substrate only at 1 wt%. Concentrations above 2 wt% of the CdSe QDs in LC1 show planar alignment mainly due to aggregation of the QDs in LC1 at these higher concentrations. On the contrary,the CdTe QDs favoring planar anchoring of the nematic LC induce homeotropic alignment of LC1 at concentrations above 2 wt% between plain glass slides. All QDs are effective in reducing the threshold voltage (V_(th)) and the splay elastic constant (K_(11)). The most drastic reduction over the entire temperature range,however,was observed for the smallest CdSe_(480) QDs,which showed the least tendency of all investigated QDs to aggregate in LC1.
机译:为了研究向列型液相色谱中量子点(QD)的尺寸和取决于封端剂的取向和电光效应,制备并研究了掺杂十六烷基胺封端的CdSe和巯基乙酸封端的CdTe量子点的向列型苯基嘧啶LC(LC1)的混合物。通过偏光光学显微镜在未经处理的普通玻璃载玻片之间以及在带有涂有聚酰亚胺取向层的ITO涂层玻璃池中进行电镜分析。研究的五个CdSe QD尺寸从2.5到5.2 nm不等,显示的荧光发射最大值在480到610 nm之间,四个CdTe QD尺寸从3.2到4.0 nm不等,其发射的光从530到610 nm不等。他们的大小。有利于向列LC垂直锚定的CdSe QD引起在普通玻璃载玻片之间LC1中1%和2 wt%的垂直对齐,而在平面单元中仅诱导1%wt的垂直对齐,除了在590 nm处发射的CdSe QD(CdSe_(590)) ,其仅在1 wt%时引起与衬底无关的垂直对准。 LC1中CdSe QD的2 wt%以上的浓度显示出平面排列,主要是由于这些较高浓度下LC1中QD的聚集。相反,有利于向列LC的平面锚固的CdTe QD在普通载玻片之间以高于2 wt%的浓度诱导LC1垂直排列。所有QD均有效地降低了阈值电压(V_(th))和扩展弹性常数(K_(11))。然而,对于最小的CdSe_(480)QD,在整个温度范围内观察到最大的减少,这表明所有研究的QD在LC1中聚集的趋势最小。

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